We present the first lattice QCD calculation of coupled πω and πϕ scattering, incorporating coupled S and D-wave πω in JP=1+. Finite-volume spectra in three volumes are determined via a variational analysis of matrices of two-point correlation functions, computed using large bases of operators resembling single-meson, two-meson and three-meson structures, with the light-quark mass corresponding to a pion mass of mπ≈391 MeV. Utilizing the relationship between the discrete spectrum of finite-volume energies and infinite-volume scattering amplitudes, we find a narrow axial-vector resonance (JPC=1+−), the analogue of the b1 meson, with mass mR≈1380 MeV and width ΓR≈91 MeV. The resonance is found to couple dominantly to S-wave πω, with a much-suppressed coupling to D-wave πω, and a negligible coupling to πϕ consistent with the `OZI rule'. No resonant behavior is observed in πϕ, indicating the absence of a putative low-mass Zs analogue of the Zc claimed in πJ/ψ. In order to minimally present the contents of a unitary three-channel scattering matrix, we introduce an n-channel generalization of the traditional two-channel Stapp parameterization.
@article{arxiv.1904.04136,
title = {The $b_1$ resonance in coupled $\pi\omega$, $\pi\phi$ scattering from lattice QCD},
author = {Antoni J. Woss and Christopher E. Thomas and Jozef J. Dudek and Robert G. Edwards and David J. Wilson},
journal= {arXiv preprint arXiv:1904.04136},
year = {2019}
}